Context. Elemental abundance studies of solar twin stars suggest that the solar chemical composition contains signatures of the formation of terrestrial planets in the solar system, namely small but significant depletions of the refractory elements. Aims. To test whether these chemical signatures of planets are real, we study stars which, compared to solar twins, have less massive convective envelopes (therefore increasing the amplitude of the predicted effect) or are, arguably, more likely to host planets (thus increasing the frequency of signature detections). Methods. We measure relative atmospheric parameters and elemental abundances of two groups of stars: a “warm” late-F type dwarf sample (52 stars), and a sample of “m...
Context: Binary systems with similar components are ideal laboratories that allow several physical p...
Context. Detailed chemical abundances of volatile and refractory elements have been discussed in the...
We present a detailed chemical abundance analysis of a sample of F- and G-type stars. We investigate...
Context. Elemental abundance studies of solar twin stars suggest that the solar chemical composition...
Context. Elemental abundance studies of solar twin stars suggest that the solar chemical composition...
Recent studies have shown that the elemental abundances in the Sun are anomalous when compared to mo...
Recent studies have shown that the elemental abundances in the Sun are anomalous when compared to mo...
Context. Studies based on high-precision abundance determinations revealed that chemical patterns of...
Context. Studies based on high-precision abundance determinations revealed that chemical patterns of...
Context. High-precision determinations of abundances of elements in the atmospheres of the Sun and s...
Chemical abundance studies of the Sun and solar twins have demonstrated that the solar composition o...
We derive the abundance of 19 elements in a sample of 64 stars with fundamental parameters very simi...
There are two possible mechanisms to imprint planet signatures in the chemical composition of Sun-li...
The Sun shows a ∼10 per cent depletion in refractory elements relative to nearby solar twins. It has...
The compositions of stars are a critical diagnostic tool for many topics in astronomy such as the ev...
Context: Binary systems with similar components are ideal laboratories that allow several physical p...
Context. Detailed chemical abundances of volatile and refractory elements have been discussed in the...
We present a detailed chemical abundance analysis of a sample of F- and G-type stars. We investigate...
Context. Elemental abundance studies of solar twin stars suggest that the solar chemical composition...
Context. Elemental abundance studies of solar twin stars suggest that the solar chemical composition...
Recent studies have shown that the elemental abundances in the Sun are anomalous when compared to mo...
Recent studies have shown that the elemental abundances in the Sun are anomalous when compared to mo...
Context. Studies based on high-precision abundance determinations revealed that chemical patterns of...
Context. Studies based on high-precision abundance determinations revealed that chemical patterns of...
Context. High-precision determinations of abundances of elements in the atmospheres of the Sun and s...
Chemical abundance studies of the Sun and solar twins have demonstrated that the solar composition o...
We derive the abundance of 19 elements in a sample of 64 stars with fundamental parameters very simi...
There are two possible mechanisms to imprint planet signatures in the chemical composition of Sun-li...
The Sun shows a ∼10 per cent depletion in refractory elements relative to nearby solar twins. It has...
The compositions of stars are a critical diagnostic tool for many topics in astronomy such as the ev...
Context: Binary systems with similar components are ideal laboratories that allow several physical p...
Context. Detailed chemical abundances of volatile and refractory elements have been discussed in the...
We present a detailed chemical abundance analysis of a sample of F- and G-type stars. We investigate...